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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Suppression of Type IV fracture and improvement of creep strength of 9Cr steel welded joints by boron addition
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Suppression of Type IV fracture and improvement of creep strength of 9Cr steel welded joints by boron addition

机译:硼添加对IV型断裂的抑制和9Cr钢焊接接头蠕变强度的提高

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摘要

The microstructure and creep strength of simulated heat-affected zone (HAZ) specimens and welded joints have been investigated for advanced 9-12% Cr steels in order to make clear the mechanisms responsible for Type IV fracture and to improve the creep strength of welded joints at elevated temperature. Creep and creep rupture tests were carried out at 650℃ (923 K) for up to about 2 × 10{sup}4h. The creep rupture time of simulated HAZ specimens has its minimum after heating to A{sub}(C3) temperature, which produces fine-grained martensitic microstructure with high density of dislocations and large M{sub}23C6 carbides but no lath structure. The welded joints were fractured in fine-grained HAZ at low stresses, indicating Type IV fracture, which resulted in shorter creep life than those of base metal Reducing the width of HAZ by means of EB welding is effective for the extension of creep life but the brittle Type IV fracture appears at low-stress and long-time conditions. The addition of about 100 ppm boron combined with minimized nitrogen of 10-20 ppm suppresses the formation of fine-grained region in HAZ and hence suppresses the Type IV fracture.
机译:为了研究导致IV型断裂的机理并提高焊接接头的蠕变强度,对9-12%Cr先进钢进行了模拟热影响区(HAZ)试样和焊接接头的显微组织和蠕变强度研究。在高温下。蠕变和蠕变断裂试验在650℃(923 K)下进行了大约2×10 {sup} 4h。加热到A {sub}(C3)温度后,模拟的HAZ试样的蠕变断裂时间达到最小,这会产生具有高位错密度和大M {sub} 23C6碳化物但没有板条结构的细晶粒马氏体显微组织。焊接接头在低应力下在细晶粒的热影响区中断裂,这表明IV型断裂,导致蠕变寿命比母材缩短。通过EB焊接减小HAZ的宽度对于延长蠕变寿命是有效的,但是在低应力和长时间条件下会出现脆性IV型骨折。加入约100 ppm的硼并结合最少的10-20 ppm的氮,可抑制HAZ中细晶粒区域的形成,从而抑制IV型断裂。

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